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Quantum Finite State Machines as Sequential Quantum Circuits

机译:量子有限状态机作为顺序量子电路

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In this paper we present the synthesis process of quantum finite state machines for sequence detection based on the synthesis of quantum sequential circuits. Such machines have many applications for instance in robotics. We show the relation between the quantum circuit and the natural ability of quantum systems to retain the quantum state. We consider cases where a single qubit in a circuit represents a quantum state and another is used as the input qubit. We analyze some of the well known circuits as sequence detectors and describe their behaviors. We show that the standard quantum logic synthesis can be used for both the synthesis of quantum circuits as well as for quantum finite state machines used as sequence detectors.
机译:在本文中,我们介绍了基于量子时序电路合成的用于序列检测的量子有限状态机的合成过程。这样的机器在机器人技术中具有许多应用。我们展示了量子电路与量子系统保留量子态的自然能力之间的关系。我们考虑电路中的单个量子位表示量子状态而另一个量子位用作输入量子位的情况。我们将一些众所周知的电路作为序列检测器进行分析,并描述其行为。我们表明标准的量子逻辑综合既可用于量子电路的综合,也可用于用作序列检测器的量子有限状态机。

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